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Kyoto Fusioneering and Oak Ridge to Build World's First Fusion Blanket Verification Facility UNITY-3
Kyoto Fusioneering (KF), a Japanese fusion energy engineering company, announced that it will jointly build a facility named UNITY-3 with the U.S. Oak Ridge National Laboratory (ORNL) to verify the breeding blanket technology required for commercial fusion power plants. The project is described as the world's first facility dedicated to breeding blanket demonstration, and KF will also relocate its U.S. business base to Oak Ridge, Tennessee. The project has received support from the U.S. Department of Energy's relevant roadmap, Tennessee's nuclear energy supply chain investment fund, and the DOE, indicating that the fusion industry is shifting from purely plasma physics breakthroughs toward engineering, system integration, and supply chain development. The breeding blanket is a critical component for deuterium-tritium fusion power...
2026-08-12
ITER Test Blanket Modules Enter Key Phase of Preliminary Design Review
The International Thermonuclear Experimental Reactor (ITER) Test Blanket Module (TBM) project is advancing a key technology validation effort in the field of fusion energy. The Test Blanket Modules address the breeding blanket requirements of future fusion power plants, aiming to validate tritium breeding concepts under reactor operating conditions, providing a technical foundation for fusion fuel cycle self-sufficiency. Group photo at the European TBM Preliminary Design Review meeting held at ITER Headquarters. F4E-ITER Organization In a fusion reaction, deuterium and tritium fuse and release high-energy neutrons. When high-energy neutrons enter a lithium-containing blanket, they can interact with lithium to produce new tritium, which then re-enters the fuel cycle. Due to the scarcity of natural tritium resources, the breeding blanket is...
2026-08-07
South Korean Scholar Patents Fusion Reactor Optimization Design Method
Professor Bonggeun Hong (transliteration) of the Department of Quantum System Engineering at the College of Engineering, Jeonbuk National University, South Korea, has recently registered a patent for a fusion reactor optimization design method, aimed at supporting the engineering design and commercialization of next-generation fusion technology. [Image source: Jeonbuk National University] The design method proposed in the patent can evaluate the performance of fusion reactors in various application scenarios—including power generation, thermal energy utilization, and use as a neutron source for nuclear transmutation—while optimizing device dimensions and key component structures. Its core approach is to simultaneously consider fusion system performance and economic feasibility during the initial design phase, thereby deriving more optimal design solutions.
2026-08-06
South Korean University Team Files Patent for Fusion Reactor Optimization Design Method
Professor Hong Bong-geun of the Department of Quantum System Engineering at the College of Engineering, Jeonbuk National University, South Korea, has recently filed a patent for a fusion reactor optimization design method. This method can determine device dimensions and key component structures while enabling customized performance design for fusion reactors based on different applications such as power generation, thermal energy utilization, and transmutation neutron sources. According to reports, this design technology targets the early-stage R&D phase of fusion devices and can be used to rapidly assess the technical and economic feasibility of proposals, thereby reducing trial-and-error, shortening development cycles, and lowering development costs, providing design support for fusion energy commercialization...
2026-07-31
Preliminary Design Review Meeting Successfully Held for China's Helium-Cooled Solid Test Blanket Module System
From July 6 to 10, 2026, the ITER Organization held an expert review meeting at its headquarters in France regarding the preliminary design of China's Helium-Cooled Ceramic Breeder Test Blanket System (HCCB TBS). During the meeting, the Chinese te
2026-07-27